US9649650B2 - Mixing and dispensing device - Google Patents

Mixing and dispensing device Download PDF

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Publication number
US9649650B2
US9649650B2 US14/704,654 US201514704654A US9649650B2 US 9649650 B2 US9649650 B2 US 9649650B2 US 201514704654 A US201514704654 A US 201514704654A US 9649650 B2 US9649650 B2 US 9649650B2
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Prior art keywords
seal
inlets
chamber
wall
top surface
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US20150231658A1 (en
Inventor
Melanie R. Werner
Paul J. Mulhauser
John Puskar-Pasewicz
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MOUSE TRAP DESIGN LLC
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MOUSE TRAP DESIGN LLC
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Assigned to MOUSE TRAP DESIGN, LLC reassignment MOUSE TRAP DESIGN, LLC ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: PUSKAR-PASEWICZ, JOHN
Publication of US20150231658A1 publication Critical patent/US20150231658A1/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B15/00Details of spraying plant or spraying apparatus not otherwise provided for; Accessories
    • B05B15/20Arrangements for agitating the material to be sprayed, e.g. for stirring, mixing or homogenising
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B11/00Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use
    • B05B11/0005Components or details
    • B05B11/0062Outlet valves actuated by the pressure of the fluid to be sprayed
    • B05B11/007Outlet valves actuated by the pressure of the fluid to be sprayed being opened by deformation of a sealing element made of resiliently deformable material, e.g. flaps, skirts, duck-bill valves
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B11/00Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use
    • B05B11/01Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use characterised by the means producing the flow
    • B05B11/10Pump arrangements for transferring the contents from the container to a pump chamber by a sucking effect and forcing the contents out through the dispensing nozzle
    • B05B11/1042Components or details
    • B05B11/1066Pump inlet valves
    • B05B11/1067Pump inlet valves actuated by pressure
    • B05B11/1069Pump inlet valves actuated by pressure the valve being made of a resiliently deformable material or being urged in a closed position by a spring
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B11/00Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use
    • B05B11/01Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use characterised by the means producing the flow
    • B05B11/10Pump arrangements for transferring the contents from the container to a pump chamber by a sucking effect and forcing the contents out through the dispensing nozzle
    • B05B11/1081Arrangements for pumping several liquids or other fluent materials from several containers, e.g. for mixing them at the moment of pumping
    • B05B11/1083Arrangements for pumping several liquids or other fluent materials from several containers, e.g. for mixing them at the moment of pumping in adjustable proportion
    • B05B11/0018
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B11/00Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use
    • B05B11/0005Components or details
    • B05B11/0037Containers
    • B05B11/0039Containers associated with means for compensating the pressure difference between the ambient pressure and the pressure inside the container, e.g. pressure relief means
    • B05B11/3081
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29BPREPARATION OR PRETREATMENT OF THE MATERIAL TO BE SHAPED; MAKING GRANULES OR PREFORMS; RECOVERY OF PLASTICS OR OTHER CONSTITUENTS OF WASTE MATERIAL CONTAINING PLASTICS
    • B29B7/00Mixing; Kneading
    • B29B7/74Mixing; Kneading using other mixers or combinations of mixers, e.g. of dissimilar mixers ; Plant
    • B29B7/7438Mixing guns, i.e. hand-held mixing units having dispensing means

Definitions

  • dispensers hold a single fluid.
  • a device for dispensing a mixture of at least two fluids contained in at least two containers comprising: a body comprising first and second walls that form a chamber that is connected to a nozzle; at least two spaced-apart inlets to the chamber arranged in an array in the first wall of the body such that proximate edges of the at least two inlets are an equal distance from a generally central point on the first wall, each of the inlets having a sectional area, and each of the inlets being configured to receive the fluid from one of the at least two containers; a seal positioned in the chamber adjacent to the first wall, wherein the seal has a top surface, a bottom surface, and a center through hole substantially aligned with the central point; wherein a surface area of the top surface is greater than a sum of the sectional areas of the at least two inlets; wherein the seal is moveable between a sealed position in which the bottom surface seals the at least two inlets and an open position in which the bottom surface is spaced away from the
  • a device for dispensing a mixture of at least two fluids contained in at least two containers comprising: a body comprising first and second walls that form a chamber that is connected to a nozzle; at least two spaced-apart inlets to the chamber arranged in an array in the first wall of the body such that proximate edges of the at least two inlets are an equal distance from a generally central point on the first wall, each of the inlets having a sectional area, and each of the inlets being, configured to receive the fluid from one of the at least two containers; a seal having a top surface, a bottom surface, and a central shaft secured in the chamber by securing the central shaft in the first wall at the central point such that the central shaft of the seal is substantially aligned with the central point; wherein a surface area of the top surface is greater than a sum of the sectional areas of the at least two inlets; wherein the seal is moveable between a sealed position in which the bottom surface seals the at least two inlets and an open position
  • FIGS. 1A-1B are cross-sectional front views of mixing and dispensing devices according to the present invention taken through the body and the flow channels and showing a planar seal and a convex curved first wall ( FIG. 1A ) as a partial assembly and ( FIG. 1B ) a contoured seal and a convex curved first wall in the assembled state;
  • FIGS. 2A-2B are cross-sectional front views of mixing and dispensing devices according to the present invention taken through the body and the flow channels and showing a contoured seal and a planar first wall ( FIG. 2A ) as a partial assembly and ( FIG. 2B ) in the assembled state;
  • FIG. 3 is a cross-sectional front view of an aspect of the mixing and dispensing device taken through the body and the flow channels and showing a seal having a shaft as a partial assembly;
  • FIGS. 4A-4C are orthographic front views of an aspect of the device (with the body, the seal, and the flow channels shown in cross-section for clarity) ( FIG. 4A ) in a resting mode, ( FIG. 4B ) in a dispensing mode, and ( FIG. 4C ) in a rebound mode;
  • FIG. 5 is an orthographic front view of an aspect of the device (with the body, the seal, and the flow channels shown in cross-section for clarity);
  • FIGS. 6A-6C are aspects of the device, showing ( FIG. 6A ) an exploded view of the device, ( FIG. 6B ) an exploded view of a container, and ( FIG. 6C ) a container having a bladder;
  • FIGS. 7A-7B are exploded isometric views showing the device having inlets and flow channels ( FIG. 7A ) each having an equal sectional area and ( FIG. 7B ) each having different sectional areas;
  • FIGS. 8A-8C are orthographic front views of an aspect of the device (with the body, the seal, and the flow channels shown in cross-section for clarity) ( FIG. 8A ) in a resting mode, ( FIG. 8B ) in a dispensing mode, and ( FIG. 8C ) in a rebound mode.
  • the device 100 for dispensing, a mixture of fluids.
  • the device 100 comprises a body 105 comprising first and second walls 111 , 115 that form a chamber 120 that is connected to a nozzle 160 .
  • At least two spaced-apart inlets 130 to the chamber 120 may be arranged in an array in the first wall 111 , each of the inlets 130 being configured to receive the fluid from one of the at least two containers 105 .
  • a seal 140 for sealing the inlets 130 may be positioned in the chamber 120 .
  • the device also comprises a dispensing pump 150 operable to move the seal 140 from a sealed position ( FIGS.
  • the nozzle 160 may be configured to dispense the mixture upon activation.
  • the device 100 may be configured for use with at least two containers 105 positioned in an array.
  • the containers 105 may be positioned in a linear array ( FIG. 6A ) or a non-linear array (not shown).
  • Each container 105 is configured to hold a fluid.
  • the fluid may be a fragrance oil, a solvent, a pigment, an ink, a dye, a medication, a cream, a lotion, a dietary supplement, a flavoring, a spirit, a cleaning substance, or any other such substance available in a liquid form.
  • FIGS. 6A-6C Various optional features of the container 105 are shown in FIGS. 6A-6C and are described in detail below.
  • a body 110 has first and second walls 111 , 115 that form a chamber 120 .
  • the first wall 111 has an interior surface 117 and a central point 112 thereon.
  • the inlets 130 may be positioned in the first wall 111 relative to the central point 112 .
  • the first wall 111 may be substantially, or in some cases, completely, flat and may have an interior surface 117 that also may be substantially, or in some cases, completely, flat, respectively ( FIGS. 2, 4, 5, 7 ).
  • the first wall 111 may vary in, for example, contours, tapers or other features ( FIGS.
  • the interior surface 117 of the first wall 111 may have a protrusion into the chamber 120 , such as an interior surface having a convex curved shape, ( FIG. 1 ), a convex polygonal shape (not shown), or a conical shape ( FIG. 8 ).
  • At least two inlets 130 to the chamber 120 are configured to receive the fluid from the at least two containers 105 .
  • Each inlet 130 has a sectional area and at least one edge 131 .
  • the sectional area of each of the inlets 130 may be equal ( FIG. 7A ), or alternatively, the sectional area of at least one of the inlets may be smaller than a sectional area of the other of the at least two inlets ( FIG. 7B ).
  • at least two inlets 130 may be spaced-apart and arranged in a linear or non-linear array in the first wall 111 of the body 110 relative to the central point 112 . As illustrated in FIGS.
  • proximate edges 131 of the inlets 130 optionally may be an equal distance from the central point 112 on the interior surface 117 of the first wall 111 .
  • inlets 130 may be positioned at or proximal to a base of the conical shape forming the conical wall surface of first wall 111 .
  • inlet 130 is configured to receive fluid from one of the containers 105 .
  • the device 100 comprises at least two flow channels 170 each configured to carry fluid from one of the containers 105 to the chamber 120 through a corresponding inlet 130 . See, e.g., FIGS. 4A-4C and 8A-8C .
  • each flow channel 170 is connected at a first end 171 to a corresponding one of the containers 105 and at a second end 172 to a corresponding inlet 130 into the chamber 120 .
  • Each flow channel 170 has a sectional area.
  • the flow channels 170 may be compressible or pliable, such as an elastomeric material made of, for example, extruded PVC, silicone, etc., or the flow channels may be made of a semi-rigid or rigid material.
  • the sectional area of each flow channel 170 may be equal ( FIGS. 6A, 7A ), and a volumetric ratio of each fluid comprising the mixture may be adjusted by an adjustable valve 180 ( FIG. 6A ) that independently adjusts the mass flow rate of each one of the fluids that is drawn from a container 105 through the corresponding flow channel 170 during operation of the device 100 .
  • the sectional area of at least one of the flow channels 170 may be smaller than a sectional area of the other flow channels 170 ( FIG. 7B ) such that the volumetric ratio of each fluid comprising the mixture may be directly proportional to the sectional area of each flow channel 170 , which may determine the mass flow rate of the fluid therethrough during operation of the device 100 .
  • a seal 140 having a top surface 147 having a surface area, a bottom surface 148 , and a center through hole 143 may be secured in the chamber 120 around a perimeter of the seal 140 .
  • the seal 140 may be secured in the chamber 120 by positioning the protrusion, such as the conical protrusion 149 , of the interior surface 117 of first wall 111 , through the central through hole 143 of seal 140 .
  • the surface area of the top surface 147 of the seal 140 may be greater than a sum of the sectional areas of the at least two inlets 130 and of a sectional area of the central through hole 143 .
  • the center through hole 143 may be substantially aligned with the central point 112 on the interior surface 117 of the first wall 111 .
  • the seal 140 may be resilient, such as a material made of silicone or a solvent-resistant thermoplastic elastomer, semi-rigid, or rigid.
  • the 140 seal may be a planar member ( FIGS. 1, 7, 8 ) or may vary in, for example, shape, size, and/or thickness, and may include contours, tapers or other features ( FIG. 2 ), which together with the contour of the interior surface 117 of the first wall 111 , may vary sealing and opening characteristics of the inlets 130 .
  • the seal 140 may be secured about a peripheral edge and may include retention or sealing features such as a rim 141 or indenting sealing features.
  • the seal 140 also may have a rim 141 around a peripheral edge and/or a perimeter of the hole (not shown).
  • the seal 140 may be secured around its perimeter in the chamber 120 .
  • a bottom surface 157 of the pump body 151 wall may engage the top surface 147 of the seal 140 .
  • the engaging member 190 has a surface 157 that engages the top surface 147 of the seal 140 .
  • the surface 157 of the engaging member 190 may comprise a rigid rim 195 that compressingly engages the top surface 147 of the seal 140 to secure the seal 140 in the chamber 120 .
  • the seal 140 may be secured to one of the walls 111 , 112 of the body 110 , such as a rim 141 around the outer perimeter of the seal 140 that may engage a complementary groove (not shown) in the second wall 112 of the body 110 to secure the seal 140 in the chamber 120 .
  • the seal 140 may be secured in the chamber 120 by positioning the protrusion, such as the conical protrusion 149 , of the interior surface 117 of first wall 111 , through the central through hole 143 of seal 140 .
  • the seal 140 is moveable between a sealed position ( FIGS. 1B, 2B, 4A, 4B, 8A, 8B ) and an open position ( FIGS. 4C, 8C ).
  • the seal position is controlled by operation of the dispensing pump 150 , as described in greater detail below.
  • the bottom surface 148 of the seal 140 seals the at least two inlets 130 in order to substantially, or in some cases completely, prevent the anterograde flow of fluid into the chamber 120 or cross-flow between inlets 130 .
  • FIGS. 1B, 2B, 4A, 4B, 8A, and 8B in the sealed position, the bottom surface 148 of the seal 140 seals the at least two inlets 130 in order to substantially, or in some cases completely, prevent the anterograde flow of fluid into the chamber 120 or cross-flow between inlets 130 .
  • the bottom surface 148 of the seal 140 in the open position, is spaced away from the at least two inlets 130 to open the inlets 130 to the chamber 120 to draw fluids from the containers 105 through the inlets 130 into the chamber 120 through the hole 143 to form the mixture.
  • a dispensing pump 150 is positioned downstream from the chamber 120 and is configured to communicate with a downstream nozzle 160 .
  • the dispensing pump 150 may be any appropriate pump known to those skilled in the art.
  • the dispensing pump 150 may be manually actuated or electronically actuated with a manually actuated button that electronically operates the dispensing pump assembly 150 by means of a motor drive, for example.
  • the nozzle 160 may be configured for communication with the dispensing pump 150 and may be configured to dispense the mixture when the device 100 is in operation.
  • the nozzle 160 may be any of a variety of types of nozzle that is configured to dispense a spray, mist, drop, stream, etc. of a mixture of fluids.
  • the dispensing pump may be any appropriate such pump used, for example, for fragrances, creams, and the like and comprising injection molded components, such as for example, a nozzle, a piston-type pump in a dispensing chamber, a return spring, and having a check valve between the piston and the nozzle.
  • the device 100 may be configured for connection to at least two containers 105 each configured to contain a fluid.
  • each container 105 may be removable and refillable or replaceable.
  • each container 105 may be permanently affixed to the device 100 .
  • the containers 105 may be of differing or the same volume capacity, length, or diameter.
  • the containers 105 may be made from, by way of example, glass, plastic, metallic materials, collapsible or pliable materials such as a bladder, or materials that are resistant to degradation by the fluids contained or to be contained therein.
  • the containers 105 may be clear to render the fluid contents visible.
  • a window (not shown) may be positioned in a wall of an opaque container 105 to show the fluid contents thereof.
  • each container 105 optionally may have a gasket (not shown) or closure device 101 , such as a cap, seal, or the like that substantially closes the container 105 so that the fluid contained therein does not leak out.
  • the closure device 101 may be either integral with the container 105 or assembled.
  • a port (not shown) may be positioned in or integral with the closure device 101 to provide communication between the container 105 and the corresponding flow channel 170 when the port is in the opened position.
  • the port may be configured to receive a first end 171 of the corresponding flow channel 170 or a coupling (not shown), such as a spike, needle, nipple, zerk, or other such connector, that connects or couples the distal end of the corresponding flow channel 170 to the container 105 .
  • a coupling such as a spike, needle, nipple, zerk, or other such connector, that connects or couples the distal end of the corresponding flow channel 170 to the container 105 .
  • the port may be a pierceable septum.
  • the container may be attached to a receptacle 102 by any means known to those skilled in the art.
  • the receptacle 102 may be configured to receive a neck of the container 105 .
  • the neck and the receptacle 102 may threadably engage or the container 105 may snap-fit into the receptacle 102 .
  • each container 105 may have a vent 103 that is configured for entry of atmospheric air into the container 105 as fluid is drawn out by operation of the dispensing pump 150 .
  • the vent 103 substantially eliminates the buildup of vacuum in the container 105 and is configured to substantially prevent leakage of the fluid from the container 105 .
  • the vent 103 may be positioned within or is integral with the closure device 101 or the port.
  • the vent 103 may be an elastomeric duck-bill valve, a flapper valve, an umbrella valve, a diaphragm, a microporous plug or membrane, etc.
  • the vent 103 may be a spring-loaded assembly such as a ball or ball plunger that engages a sealing aperture.
  • a conduit 104 such as a sipper tube, may be included in each container configured to draw fluid from the interior of the container 105 and to communicate with the distal end of the corresponding flow channel 170 .
  • conduit 104 may connect to receptor 102 at one end and the other end inserted through the hole in closure device 101 .
  • a bladder 106 configured to hold the fluid may be positioned in the interior of the container 105 .
  • the port may be in communication with the interior of the bladder 106 .
  • the bladder 106 may be at least one of flexible, removable, replaceable, and refillable.
  • the containers 105 and the body 110 may be enclosed in a housing (not shown).
  • the housing may be comprised of a single component or multiple components.
  • a portion of the housing may be removable or may be configured to open or close to provide or restrict access, respectively, to the containers 105 , for example, as useful to remove and replace a container 105 .
  • the housing may be made of plastic, such as injection molded polycarbonates, polystyrenes, etc.
  • FIG. 4A A resting mode of a device 100 is illustrated in FIG. 4A .
  • seal 140 is in the sealed position.
  • a sealing force against the inlets is achieved by a preload stress upon the perimeter of the top surface of the seal which passes through the seal to the bottom surface of the seal positioned over the at least two inlets to seal the inlets.
  • a contoured bottom surface of the seal positioned against a planar interior first wall contributes to the preload stress by deforming the seal.
  • the bottom surface of the seal forms a contact with the interior of the first wall so that the seal is substantially, or in some cases completely, sealed against the at least two inlets.
  • contoured forms such as a conical or domed form optionally protrude from the interior of the first wall of the chamber and contribute to the preload stress by deforming the seal.
  • the bottom surface of the seal forms a contact with the interior of the first wall so that the seal is substantially, or in some cases completely, sealed against the at least two inlets.
  • a dispensing mode of the device 100 is shown in a dispensing mode in FIG. 4B .
  • seal 140 In the dispensing mode, seal 140 is in the sealed position.
  • the sealing force between the bottom surface 148 of the seal 140 and the edges of the inlets 130 seals fluid flow through the inlets 130 .
  • the sealing force is increased by the increasing fluid pressure within the chamber 120 which results from the movement of the piston into the chamber 120 which decreases the volume of the fluid within chamber 120 as the fluid is dispensed through the nozzle 160 .
  • Device 100 is shown in a rebound mode in FIG. 4C .
  • seal 140 In the rebound mode, seal 140 is moved to the open position. The piston rises within the chamber 120 creating a negative pressure which acts upon the top surface 147 of the seal 140 to draw the bottom surface 148 of the seal 140 away from the interior surface 117 of the first wall 111 , which draws fluid from the container 105 into the flow channels 170 and through the inlets 130 and the hole 143 into the chamber 120 to refill the chamber 120 .
  • device 100 may have interior surface 117 of the first wall 111 having a conical shape that is positioned through the center through hole 143 of the seal 140 .
  • the housing is split in two in order to create a half-housing and a lower surface of the half-housing 155 engages a portion of the seal 140 .
  • seal 143 is in the sealed position.
  • a sealing force against the inlets 130 is achieved by a preload stress upon the perimeter of the top surface 147 of the seal 140 which passes through the seal 140 to the bottom surface 148 of the seal 140 positioned over the at least two inlets 130 to seal the inlets 130 .
  • a conical protrusion 149 through the central hole 143 in the seal 140 stretches the seal 140 annularly, resulting in a hoop stress within the seal 140 , which creates a sealing pressure against the bottom surface 148 of the seal 140 and the conical protrusion 149 .
  • the bottom surface 148 of the seal 140 forms a contact with the interior surface 117 of the first wall 117 so that the seal 140 is substantially, or in some cases completely, sealed against the at least two inlets 130 .
  • Device 100 is shown in a dispensing mode in FIG. 8B .
  • seal 140 In the dispensing mode, seal 140 is in the sealed position. The sealing force between the bottom surface 148 of the seal 140 and the edges of the inlets 130 seals fluid flow through the inlets 130 .
  • Device 100 is shown in a rebound mode in FIG. 8C .
  • seal 140 is deformed to the open position.
  • the piston 199 rises within the chamber 120 creating a negative pressure which acts upon the top surface 147 of the seal 140 to draw the bottom surface 148 of the seal 140 away from the interior surface 117 of the first wall 111 , which draws fluid from each container 105 into the corresponding flow channel 170 and through the inlets 130 and the center through hole 143 into the chamber 120 to refill the chamber 120 .
  • FIG. 3 A device according to the present invention for dispensing a mixture of at least two fluids is illustrated in FIG. 3 .
  • the component parts and surfaces of the device designated as 100 were referred to with corresponding reference numbers in the 100 series.
  • the component parts of the device shown in FIG. 3 are referred to with reference numbers in the 200 series.
  • the body of device 100 is designated 110
  • the body of the device shown in FIG. 3 is designated 210 .
  • the body 210 , inlets 230 , dispensing pump 250 , nozzle, and each of their respective component parts and surfaces of the device shown in FIG. 3 are the same as the corresponding parts and surfaces of device 100 and therefore the description of these parts is not repeated herein with respect to the device 200 shown in FIG. 3 .
  • the device shown in FIG. 3 comprises a body 210 comprising first and second walls 211 , 215 that form a chamber 220 that may be connected to a nozzle 260 .
  • At least two spaced-apart inlets 230 to the chamber 220 may be arranged in the first wall 211 of the body 210 such that proximate edges of the at least two inlets 230 are an equal distance from a generally central point 212 on the first wall 211 , each of the inlets 230 having a sectional area, and each of the inlets 230 configured to receive the fluid from one of the at least two containers 205 .
  • a seal 240 having a top surface 247 , a bottom surface 248 , and a central shaft 246 may be secured in the chamber 220 by securing the central shaft 246 in the first wall 211 at the central point 212 such that the central shaft 246 of the seal 240 may be substantially aligned with the central point 212 , of the interior of the first wall 217 .
  • the surface area of the top surface 247 of the seal 240 may be greater than a sum of the sectional areas of the at least two inlets 230 .
  • the seal may be of low compliance force so as to be drawn easily open by the dispensing pump to draw fluid through the at least two inlets 230 .
  • the seal 240 may be resilient, such as a material made of silicone or a solvent-resistant thermoplastic elastomer, semi-rigid, or rigid.
  • the seal 240 may be moveable between a sealed position and an open position. According to the present invention, the sealed position may be controlled by operation of the dispensing pump 250 . In the sealed position, the bottom surface 248 of the seal 240 seals the at least two inlets 230 in order to substantially, or in some cases completely, prevent the anterograde flow of fluid into the chamber 220 or cross-flow between the at least two inlets 230 , each independently associated with fluid flow from one of the at least two containers. In the open position, the bottom surface 248 of the seal 240 is spaced away from the at least two inlets 230 to open the inlets 230 to the chamber 220 to draw fluids from the containers (not shown) through the inlets 230 into the chamber 220 to form the mixture.
  • a dispensing pump 250 is operable to move the seal 240 from the sealed position to the open position to draw the fluids from the containers 205 through the at least two inlets 230 into the chamber 220 to form the mixture.
  • the nozzle (not shown) is configured to dispense the mixture upon activation.

Abstract

A device for mixing and dispensing fluids has first and second walls that form a chamber connected to a nozzle. Inlets each configured to receive one fluid are arranged in the first wall. Proximate edges of the inlets are an equal distance from a central point on the first wall. A seal having top and bottom surfaces and a center through hole is positioned in the chamber. The center hole is substantially aligned with the central point. A surface area of the top surface is greater than a sum of the sectional areas of the inlets. A dispensing pump moves the seal between a sealed position in which the bottom surface seals the inlets and an open position in which the bottom surface is spaced away from the inlets to open the inlets to draw the fluids into the chamber to form the mixture for dispensing through the nozzle.

Description

CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in part of U.S. patent application Ser. No. 14/536,331, filed on Nov. 7, 2014, entitled “Mixing and Dispensing Device,” which claims priority to U.S. Provisional Application No. 61/962,510, filed on Nov. 7, 2013, entitled “Mixing and Dispensing Device,” both of which are incorporated herein by reference.
BACKGROUND
Various devices are known in the art to dispense fluids. Typically, dispensers hold a single fluid. However, it is often desirable for multiple fluids to be stored in separate storage containers within a single device, and then mixed and immediately dispensed as a mixture from the device. In various industries, including the cosmetic industry, it is desirable to have a device that is configured to proportionally adjust the volumetric ratio of each fluid that makes up the mixture, in order to provide a customized product that includes each of a plurality of fluids.
SUMMARY
In an aspect, a device for dispensing a mixture of at least two fluids contained in at least two containers is disclosed, comprising: a body comprising first and second walls that form a chamber that is connected to a nozzle; at least two spaced-apart inlets to the chamber arranged in an array in the first wall of the body such that proximate edges of the at least two inlets are an equal distance from a generally central point on the first wall, each of the inlets having a sectional area, and each of the inlets being configured to receive the fluid from one of the at least two containers; a seal positioned in the chamber adjacent to the first wall, wherein the seal has a top surface, a bottom surface, and a center through hole substantially aligned with the central point; wherein a surface area of the top surface is greater than a sum of the sectional areas of the at least two inlets; wherein the seal is moveable between a sealed position in which the bottom surface seals the at least two inlets and an open position in which the bottom surface is spaced away from the at least two inlets to open the inlets to the chamber through the hole; and a dispensing pump that is operable to move the seal between the sealed and the open positions; wherein the nozzle is configured to dispense the mixture upon activation.
In another aspect, a device for dispensing a mixture of at least two fluids contained in at least two containers, comprising: a body comprising first and second walls that form a chamber that is connected to a nozzle; at least two spaced-apart inlets to the chamber arranged in an array in the first wall of the body such that proximate edges of the at least two inlets are an equal distance from a generally central point on the first wall, each of the inlets having a sectional area, and each of the inlets being, configured to receive the fluid from one of the at least two containers; a seal having a top surface, a bottom surface, and a central shaft secured in the chamber by securing the central shaft in the first wall at the central point such that the central shaft of the seal is substantially aligned with the central point; wherein a surface area of the top surface is greater than a sum of the sectional areas of the at least two inlets; wherein the seal is moveable between a sealed position in which the bottom surface seals the at least two inlets and an open position in which the bottom surface is spaced away from the at least two inlets to open the inlets to the chamber; and a dispensing pump that is operable to move the seal between the sealed and the open positions; wherein the nozzle is configured to dispense the mixture upon activation.
BRIEF DESCRIPTION OF THE DRAWINGS
FIGS. 1A-1B are cross-sectional front views of mixing and dispensing devices according to the present invention taken through the body and the flow channels and showing a planar seal and a convex curved first wall (FIG. 1A) as a partial assembly and (FIG. 1B) a contoured seal and a convex curved first wall in the assembled state;
FIGS. 2A-2B are cross-sectional front views of mixing and dispensing devices according to the present invention taken through the body and the flow channels and showing a contoured seal and a planar first wall (FIG. 2A) as a partial assembly and (FIG. 2B) in the assembled state;
FIG. 3 is a cross-sectional front view of an aspect of the mixing and dispensing device taken through the body and the flow channels and showing a seal having a shaft as a partial assembly;
FIGS. 4A-4C are orthographic front views of an aspect of the device (with the body, the seal, and the flow channels shown in cross-section for clarity) (FIG. 4A) in a resting mode, (FIG. 4B) in a dispensing mode, and (FIG. 4C) in a rebound mode;
FIG. 5 is an orthographic front view of an aspect of the device (with the body, the seal, and the flow channels shown in cross-section for clarity);
FIGS. 6A-6C are aspects of the device, showing (FIG. 6A) an exploded view of the device, (FIG. 6B) an exploded view of a container, and (FIG. 6C) a container having a bladder;
FIGS. 7A-7B are exploded isometric views showing the device having inlets and flow channels (FIG. 7A) each having an equal sectional area and (FIG. 7B) each having different sectional areas; and
FIGS. 8A-8C are orthographic front views of an aspect of the device (with the body, the seal, and the flow channels shown in cross-section for clarity) (FIG. 8A) in a resting mode, (FIG. 8B) in a dispensing mode, and (FIG. 8C) in a rebound mode.
DETAILED DESCRIPTION
As shown generally in the Figures, according to the present invention, disclosed is a device 100 for dispensing, a mixture of fluids. As described above, the device 100 comprises a body 105 comprising first and second walls 111, 115 that form a chamber 120 that is connected to a nozzle 160. At least two spaced-apart inlets 130 to the chamber 120 may be arranged in an array in the first wall 111, each of the inlets 130 being configured to receive the fluid from one of the at least two containers 105. A seal 140 for sealing the inlets 130 may be positioned in the chamber 120. The device also comprises a dispensing pump 150 operable to move the seal 140 from a sealed position (FIGS. 4A, 4B, 8A, 8B) to an open position (FIG. 4C, 8C) and to draw the fluids from the containers 105 through the at least two inlets 130 into the chamber 120 to form the mixture. The nozzle 160 may be configured to dispense the mixture upon activation.
The device 100 may be configured for use with at least two containers 105 positioned in an array. According to the present invention, the containers 105 may be positioned in a linear array (FIG. 6A) or a non-linear array (not shown). Each container 105 is configured to hold a fluid. In various aspects, the fluid may be a fragrance oil, a solvent, a pigment, an ink, a dye, a medication, a cream, a lotion, a dietary supplement, a flavoring, a spirit, a cleaning substance, or any other such substance available in a liquid form. Various optional features of the container 105 are shown in FIGS. 6A-6C and are described in detail below.
Referring to FIGS. 1-3, a body 110 has first and second walls 111, 115 that form a chamber 120. The first wall 111 has an interior surface 117 and a central point 112 thereon. As described in greater detail below, the inlets 130 may be positioned in the first wall 111 relative to the central point 112. According to the present invention, the first wall 111 may be substantially, or in some cases, completely, flat and may have an interior surface 117 that also may be substantially, or in some cases, completely, flat, respectively (FIGS. 2, 4, 5, 7). Alternatively, according to the present invention, the first wall 111 may vary in, for example, contours, tapers or other features (FIGS. 1 and 8A-8C) and may have an interior surface 117 that also may vary in contours, tapers or other features to vary sealing characteristics of the seal. For example, the interior surface 117 of the first wall 111 may have a protrusion into the chamber 120, such as an interior surface having a convex curved shape, (FIG. 1), a convex polygonal shape (not shown), or a conical shape (FIG. 8).
As shown generally, in the Figures, according to the present invention, at least two inlets 130 to the chamber 120 are configured to receive the fluid from the at least two containers 105. Each inlet 130 has a sectional area and at least one edge 131. Optionally, the sectional area of each of the inlets 130 may be equal (FIG. 7A), or alternatively, the sectional area of at least one of the inlets may be smaller than a sectional area of the other of the at least two inlets (FIG. 7B). As shown generally in the Figures, at least two inlets 130 may be spaced-apart and arranged in a linear or non-linear array in the first wall 111 of the body 110 relative to the central point 112. As illustrated in FIGS. 1 and 2, proximate edges 131 of the inlets 130 optionally may be an equal distance from the central point 112 on the interior surface 117 of the first wall 111. Optionally, according to the present invention, as illustrated in FIG. 8, inlets 130 may be positioned at or proximal to a base of the conical shape forming the conical wall surface of first wall 111.
According to the present invention, inlet 130 is configured to receive fluid from one of the containers 105. According to the present invention, the device 100 comprises at least two flow channels 170 each configured to carry fluid from one of the containers 105 to the chamber 120 through a corresponding inlet 130. See, e.g., FIGS. 4A-4C and 8A-8C. As illustrated in FIG. 6, each flow channel 170 is connected at a first end 171 to a corresponding one of the containers 105 and at a second end 172 to a corresponding inlet 130 into the chamber 120. Each flow channel 170 has a sectional area. The flow channels 170 may be compressible or pliable, such as an elastomeric material made of, for example, extruded PVC, silicone, etc., or the flow channels may be made of a semi-rigid or rigid material. The sectional area of each flow channel 170 may be equal (FIGS. 6A, 7A), and a volumetric ratio of each fluid comprising the mixture may be adjusted by an adjustable valve 180 (FIG. 6A) that independently adjusts the mass flow rate of each one of the fluids that is drawn from a container 105 through the corresponding flow channel 170 during operation of the device 100. Alternatively, the sectional area of at least one of the flow channels 170 may be smaller than a sectional area of the other flow channels 170 (FIG. 7B) such that the volumetric ratio of each fluid comprising the mixture may be directly proportional to the sectional area of each flow channel 170, which may determine the mass flow rate of the fluid therethrough during operation of the device 100.
As illustrated generally in FIGS. 1-7, according to the present invention, a seal 140 having a top surface 147 having a surface area, a bottom surface 148, and a center through hole 143 may be secured in the chamber 120 around a perimeter of the seal 140. Alternatively, according to the present invention, and as illustrated in FIG. 8, the seal 140 may be secured in the chamber 120 by positioning the protrusion, such as the conical protrusion 149, of the interior surface 117 of first wall 111, through the central through hole 143 of seal 140. The surface area of the top surface 147 of the seal 140 may be greater than a sum of the sectional areas of the at least two inlets 130 and of a sectional area of the central through hole 143. As shown in FIGS. 1, 2, and 8, the center through hole 143 may be substantially aligned with the central point 112 on the interior surface 117 of the first wall 111. The seal 140 may be resilient, such as a material made of silicone or a solvent-resistant thermoplastic elastomer, semi-rigid, or rigid.
The 140 seal may be a planar member (FIGS. 1, 7, 8) or may vary in, for example, shape, size, and/or thickness, and may include contours, tapers or other features (FIG. 2), which together with the contour of the interior surface 117 of the first wall 111, may vary sealing and opening characteristics of the inlets 130. As illustrated in FIGS. 2 and 5, optionally the seal 140 may be secured about a peripheral edge and may include retention or sealing features such as a rim 141 or indenting sealing features. The seal 140 also may have a rim 141 around a peripheral edge and/or a perimeter of the hole (not shown).
As described above, according to the present invention, optionally the seal 140 may be secured around its perimeter in the chamber 120. As illustrated in FIGS. 1, 2, and 4, a bottom surface 157 of the pump body 151 wall may engage the top surface 147 of the seal 140. Optionally, according to the present invention, as illustrated in FIG. 5, there may be an engaging member 190 in the chamber 120 proximal to the seal 140. The engaging member 190 has a surface 157 that engages the top surface 147 of the seal 140. Optionally, according to the present invention, the surface 157 of the engaging member 190 may comprise a rigid rim 195 that compressingly engages the top surface 147 of the seal 140 to secure the seal 140 in the chamber 120. Optionally, the seal 140 may be secured to one of the walls 111, 112 of the body 110, such as a rim 141 around the outer perimeter of the seal 140 that may engage a complementary groove (not shown) in the second wall 112 of the body 110 to secure the seal 140 in the chamber 120. Optionally, according to the present invention, as illustrated in FIG. 8, the seal 140 may be secured in the chamber 120 by positioning the protrusion, such as the conical protrusion 149, of the interior surface 117 of first wall 111, through the central through hole 143 of seal 140.
According to the present invention, the seal 140 is moveable between a sealed position (FIGS. 1B, 2B, 4A, 4B, 8A, 8B) and an open position (FIGS. 4C, 8C). The seal position is controlled by operation of the dispensing pump 150, as described in greater detail below. As illustrated in FIGS. 1B, 2B, 4A, 4B, 8A, and 8B, in the sealed position, the bottom surface 148 of the seal 140 seals the at least two inlets 130 in order to substantially, or in some cases completely, prevent the anterograde flow of fluid into the chamber 120 or cross-flow between inlets 130. As illustrated in FIGS. 4C and 8C, in the open position, the bottom surface 148 of the seal 140 is spaced away from the at least two inlets 130 to open the inlets 130 to the chamber 120 to draw fluids from the containers 105 through the inlets 130 into the chamber 120 through the hole 143 to form the mixture.
As illustrated in FIGS. 4, 6, and 8, according to the present invention, a dispensing pump 150 is positioned downstream from the chamber 120 and is configured to communicate with a downstream nozzle 160. The dispensing pump 150 may be any appropriate pump known to those skilled in the art. The dispensing pump 150 may be manually actuated or electronically actuated with a manually actuated button that electronically operates the dispensing pump assembly 150 by means of a motor drive, for example.
The nozzle 160 may be configured for communication with the dispensing pump 150 and may be configured to dispense the mixture when the device 100 is in operation. The nozzle 160 may be any of a variety of types of nozzle that is configured to dispense a spray, mist, drop, stream, etc. of a mixture of fluids. The dispensing pump may be any appropriate such pump used, for example, for fragrances, creams, and the like and comprising injection molded components, such as for example, a nozzle, a piston-type pump in a dispensing chamber, a return spring, and having a check valve between the piston and the nozzle.
As described above, and as illustrated in FIG. 6A, according to the present invention, the device 100 may be configured for connection to at least two containers 105 each configured to contain a fluid. Optionally, each container 105 may be removable and refillable or replaceable. Alternatively, according to the present invention, each container 105 may be permanently affixed to the device 100. The containers 105 may be of differing or the same volume capacity, length, or diameter. According to the present invention, the containers 105 may be made from, by way of example, glass, plastic, metallic materials, collapsible or pliable materials such as a bladder, or materials that are resistant to degradation by the fluids contained or to be contained therein. Optionally, the containers 105 may be clear to render the fluid contents visible. Optionally, a window (not shown) may be positioned in a wall of an opaque container 105 to show the fluid contents thereof.
As illustrated in FIGS. 6A and 6B, each container 105 optionally may have a gasket (not shown) or closure device 101, such as a cap, seal, or the like that substantially closes the container 105 so that the fluid contained therein does not leak out. The closure device 101 may be either integral with the container 105 or assembled. A port (not shown) may be positioned in or integral with the closure device 101 to provide communication between the container 105 and the corresponding flow channel 170 when the port is in the opened position. The port may be configured to receive a first end 171 of the corresponding flow channel 170 or a coupling (not shown), such as a spike, needle, nipple, zerk, or other such connector, that connects or couples the distal end of the corresponding flow channel 170 to the container 105. In an aspect, the port may be a pierceable septum.
The container may be attached to a receptacle 102 by any means known to those skilled in the art. In an aspect illustrated in FIG. 6A, the receptacle 102 may be configured to receive a neck of the container 105. The neck and the receptacle 102 may threadably engage or the container 105 may snap-fit into the receptacle 102.
As illustrated in FIG. 6B, according to the present invention, each container 105 may have a vent 103 that is configured for entry of atmospheric air into the container 105 as fluid is drawn out by operation of the dispensing pump 150. The vent 103 substantially eliminates the buildup of vacuum in the container 105 and is configured to substantially prevent leakage of the fluid from the container 105. In aspects, the vent 103 may be positioned within or is integral with the closure device 101 or the port. By way of example, the vent 103 may be an elastomeric duck-bill valve, a flapper valve, an umbrella valve, a diaphragm, a microporous plug or membrane, etc. In another example, the vent 103 may be a spring-loaded assembly such as a ball or ball plunger that engages a sealing aperture.
Optionally, as illustrated in FIG. 6B, a conduit 104, such as a sipper tube, may be included in each container configured to draw fluid from the interior of the container 105 and to communicate with the distal end of the corresponding flow channel 170. According to the present invention, conduit 104 may connect to receptor 102 at one end and the other end inserted through the hole in closure device 101.
Optionally, as illustrated in FIG. 6C, a bladder 106 configured to hold the fluid may be positioned in the interior of the container 105. The port may be in communication with the interior of the bladder 106. In aspects, the bladder 106 may be at least one of flexible, removable, replaceable, and refillable.
Optionally, the containers 105 and the body 110 may be enclosed in a housing (not shown). Optionally, the housing may be comprised of a single component or multiple components. Optionally, a portion of the housing may be removable or may be configured to open or close to provide or restrict access, respectively, to the containers 105, for example, as useful to remove and replace a container 105. The housing may be made of plastic, such as injection molded polycarbonates, polystyrenes, etc.
A resting mode of a device 100 is illustrated in FIG. 4A. As shown, seal 140 is in the sealed position. A sealing force against the inlets is achieved by a preload stress upon the perimeter of the top surface of the seal which passes through the seal to the bottom surface of the seal positioned over the at least two inlets to seal the inlets. A contoured bottom surface of the seal positioned against a planar interior first wall contributes to the preload stress by deforming the seal. The bottom surface of the seal forms a contact with the interior of the first wall so that the seal is substantially, or in some cases completely, sealed against the at least two inlets. As illustrated in FIG. 1B, contoured forms such as a conical or domed form optionally protrude from the interior of the first wall of the chamber and contribute to the preload stress by deforming the seal. The bottom surface of the seal forms a contact with the interior of the first wall so that the seal is substantially, or in some cases completely, sealed against the at least two inlets.
A dispensing mode of the device 100 is shown in a dispensing mode in FIG. 4B. In the dispensing mode, seal 140 is in the sealed position. The sealing force between the bottom surface 148 of the seal 140 and the edges of the inlets 130 seals fluid flow through the inlets 130. The sealing force is increased by the increasing fluid pressure within the chamber 120 which results from the movement of the piston into the chamber 120 which decreases the volume of the fluid within chamber 120 as the fluid is dispensed through the nozzle 160.
Device 100 is shown in a rebound mode in FIG. 4C. In the rebound mode, seal 140 is moved to the open position. The piston rises within the chamber 120 creating a negative pressure which acts upon the top surface 147 of the seal 140 to draw the bottom surface 148 of the seal 140 away from the interior surface 117 of the first wall 111, which draws fluid from the container 105 into the flow channels 170 and through the inlets 130 and the hole 143 into the chamber 120 to refill the chamber 120.
As described above and as illustrated in FIG. 8, optionally, device 100 may have interior surface 117 of the first wall 111 having a conical shape that is positioned through the center through hole 143 of the seal 140. The housing is split in two in order to create a half-housing and a lower surface of the half-housing 155 engages a portion of the seal 140. As illustrated in FIG. 8A, at rest, seal 143 is in the sealed position. A sealing force against the inlets 130 is achieved by a preload stress upon the perimeter of the top surface 147 of the seal 140 which passes through the seal 140 to the bottom surface 148 of the seal 140 positioned over the at least two inlets 130 to seal the inlets 130. A conical protrusion 149 through the central hole 143 in the seal 140 stretches the seal 140 annularly, resulting in a hoop stress within the seal 140, which creates a sealing pressure against the bottom surface 148 of the seal 140 and the conical protrusion 149. The bottom surface 148 of the seal 140 forms a contact with the interior surface 117 of the first wall 117 so that the seal 140 is substantially, or in some cases completely, sealed against the at least two inlets 130.
Device 100 is shown in a dispensing mode in FIG. 8B. In the dispensing mode, seal 140 is in the sealed position. The sealing force between the bottom surface 148 of the seal 140 and the edges of the inlets 130 seals fluid flow through the inlets 130.
Device 100 is shown in a rebound mode in FIG. 8C. In the rebound mode, seal 140 is deformed to the open position. The piston 199 rises within the chamber 120 creating a negative pressure which acts upon the top surface 147 of the seal 140 to draw the bottom surface 148 of the seal 140 away from the interior surface 117 of the first wall 111, which draws fluid from each container 105 into the corresponding flow channel 170 and through the inlets 130 and the center through hole 143 into the chamber 120 to refill the chamber 120.
A device according to the present invention for dispensing a mixture of at least two fluids is illustrated in FIG. 3. As described above, the component parts and surfaces of the device designated as 100 were referred to with corresponding reference numbers in the 100 series. The component parts of the device shown in FIG. 3 are referred to with reference numbers in the 200 series. For example, the body of device 100 is designated 110, while the body of the device shown in FIG. 3 is designated 210. The body 210, inlets 230, dispensing pump 250, nozzle, and each of their respective component parts and surfaces of the device shown in FIG. 3 are the same as the corresponding parts and surfaces of device 100 and therefore the description of these parts is not repeated herein with respect to the device 200 shown in FIG. 3.
As discussed above with respect to device 100, the device shown in FIG. 3 comprises a body 210 comprising first and second walls 211, 215 that form a chamber 220 that may be connected to a nozzle 260. At least two spaced-apart inlets 230 to the chamber 220 may be arranged in the first wall 211 of the body 210 such that proximate edges of the at least two inlets 230 are an equal distance from a generally central point 212 on the first wall 211, each of the inlets 230 having a sectional area, and each of the inlets 230 configured to receive the fluid from one of the at least two containers 205.
As illustrated in FIG. 3, according to the present invention, a seal 240 having a top surface 247, a bottom surface 248, and a central shaft 246 may be secured in the chamber 220 by securing the central shaft 246 in the first wall 211 at the central point 212 such that the central shaft 246 of the seal 240 may be substantially aligned with the central point 212, of the interior of the first wall 217.
The surface area of the top surface 247 of the seal 240 may be greater than a sum of the sectional areas of the at least two inlets 230. The seal may be of low compliance force so as to be drawn easily open by the dispensing pump to draw fluid through the at least two inlets 230. The seal 240 may be resilient, such as a material made of silicone or a solvent-resistant thermoplastic elastomer, semi-rigid, or rigid.
The seal 240 may be moveable between a sealed position and an open position. According to the present invention, the sealed position may be controlled by operation of the dispensing pump 250. In the sealed position, the bottom surface 248 of the seal 240 seals the at least two inlets 230 in order to substantially, or in some cases completely, prevent the anterograde flow of fluid into the chamber 220 or cross-flow between the at least two inlets 230, each independently associated with fluid flow from one of the at least two containers. In the open position, the bottom surface 248 of the seal 240 is spaced away from the at least two inlets 230 to open the inlets 230 to the chamber 220 to draw fluids from the containers (not shown) through the inlets 230 into the chamber 220 to form the mixture.
Referring still to FIG. 3, as described above with respect to device 100, according to the present invention, a dispensing pump 250 is operable to move the seal 240 from the sealed position to the open position to draw the fluids from the containers 205 through the at least two inlets 230 into the chamber 220 to form the mixture. The nozzle (not shown) is configured to dispense the mixture upon activation.
While the foregoing has been set forth in considerable detail, it is to be understood that the drawings and detailed aspects are presented for elucidation and not limitation. Design variations, especially in matters of shape, size and arrangements of parts may be made but are within the principles described herein. Those skilled in the art will realize that such changes or modifications of the invention or combinations of elements, variations, equivalents or improvements therein are still within the scope of the system and device as defined in the appended claims.

Claims (18)

We claim:
1. A device for dispensing a mixture of at least two fluids contained in at least two containers, comprising:
a body comprising first and second walls that form a chamber that is connected to a nozzle;
at least two spaced-apart inlets to the chamber arranged in an array in the first wall of the body such that proximate edges of the at least two inlets are an equal distance from a generally central point on the first wall, each of the inlets having a sectional area, and each of the inlets being configured to receive the fluid from one of the at least two containers;
a seal positioned in the chamber adjacent to the first wall, wherein the seal has a top surface, a bottom surface, and a center through hole substantially aligned with the central point;
wherein a surface area of the top surface is greater than a sum of the sectional areas of the at least two inlets;
wherein the seal is moveable between a sealed position in which the bottom surface seals the at least two inlets and an open position in which the bottom surface is spaced away from the at least two inlets to open the inlets to the chamber through the hole; and
a dispensing pump that is operable to move the seal between the sealed and the open positions;
wherein the nozzle is configured to dispense the mixture upon activation.
2. The device as in claim 1, further comprising the at least two containers, each container configured to hold one of the at least two fluids.
3. The device as in claim 1, further comprising at least two flow channels, each flow channel having a first end connected to one of the containers and a second end connected to one of the inlets.
4. The device as in claim 3, wherein a sectional area of at least one of the at least two flow channels is smaller than a sectional area of the other of the at least two flow channels.
5. The device as in claim 1, further comprising at least two independently actuable valves, each valve for controlling a flow of one of the fluids into the chamber.
6. The device as in claim 1, further comprising an engaging member positioned in the chamber proximal to the seal and having a surface that engages the top surface of the seal.
7. The device as in claim 1, further comprising an engaging member positioned in the chamber proximal to the seal and having a surface comprising a rim that compressingly engages the top surface of the seal.
8. The device as in claim 1, wherein the surface area of the top surface is greater than a sectional area of the center through hole.
9. The device as in claim 1, wherein an interior surface of the first wall is substantially planar.
10. The device as in claim 1, wherein an interior surface of the first wall comprises a convex shape.
11. The device as in claim 1, wherein an interior surface of the first wall comprises a conical shape.
12. The device as in claim 11, wherein the conical shape is positioned through the center through hole of the seal.
13. The device as in claim 1, wherein at least one of the top surface and the bottom surface of the seal is planar.
14. The device as in claim 1, wherein at least one of the top surface and the bottom surface of the seal is contoured.
15. The device as in claim 1, wherein at least one of the top surface and the bottom surface is tapered.
16. The device as in claim 1, wherein the top surface of the seal comprises a rim.
17. The device as in claim 1, wherein the bottom surface of the seal comprises a rim.
18. The device as in claim 1, wherein the dispensing pump is operable to move the seal to the open position to draw the fluids from the containers through the at least two inlets into the chamber through the hole to form the mixture and to move the seal from the open position to the sealed position.
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Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110124919A (en) * 2019-05-22 2019-08-16 成都工业职业技术学院 A kind of multicomponent paint spray device
US10974265B1 (en) * 2018-07-22 2021-04-13 Paul Sung Ventresca LLC Spray device with interchangeable cartridges and methods of use
US11464889B2 (en) 2018-11-29 2022-10-11 Ethicon, Inc. Antimicrobial-containing silicone lubricious coatings
US11479669B2 (en) 2020-05-28 2022-10-25 Ethicon, Inc. Topical skin closure compositions and systems
US11518604B2 (en) * 2020-05-28 2022-12-06 Ethicon, Inc. Systems, methods and devices for aerosol spraying of silicone based topical skin adhesives for sealing wounds
US11589867B2 (en) 2020-05-28 2023-02-28 Ethicon, Inc. Anisotropic wound closure systems
US11712229B2 (en) 2020-05-28 2023-08-01 Ethicon, Inc. Systems, devices and methods for dispensing and curing silicone based topical skin adhesives
US11718753B2 (en) 2020-05-28 2023-08-08 Ethicon, Inc. Topical skin closure compositions and systems

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20150122837A1 (en) * 2013-11-07 2015-05-07 Mouse Trap Design, Llc Mixing and dispensing device
EP3098606A1 (en) * 2015-05-29 2016-11-30 Roche Diagniostics GmbH Cartridge for dispensing particles and a reagent fluid
EP3181244A1 (en) * 2015-12-18 2017-06-21 HILTI Aktiengesellschaft Assembly consisting of a film package and a pressing device and film package
US11135609B2 (en) 2017-12-28 2021-10-05 Marene Corona Multi-nozzle multi-container fluid spray device

Citations (104)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US704105A (en) 1901-11-29 1902-07-08 Ellis D Read Bottle or flask.
US2118704A (en) 1936-09-14 1938-05-24 Raymond B Grontkowski Embalming machine and aspirator
US2400955A (en) 1943-08-14 1946-05-28 Samel Leo Beverage container and dispenser
US2608320A (en) 1947-03-31 1952-08-26 Jr Joseph R Harrison Pump type dispenser with cartridge having flexible and rigid portions
FR1408299A (en) 1964-07-01 1965-08-13 Perfume sprayer-mixer or atomizer-mixer
US3208639A (en) 1964-05-06 1965-09-28 Finesse Products Inc Sealed fluid dispensing system for oxidizable fluids
US3236418A (en) 1962-11-16 1966-02-22 Oreal Apparatus for producing constant proportion mixtures of two or more aerosols
US3384119A (en) 1966-03-16 1968-05-21 Masco Corp Mixing valve
US3392859A (en) 1966-04-22 1968-07-16 Albert M. Fischer Perforable self-sealing container closure
US3685694A (en) 1969-12-18 1972-08-22 Yan Nell Corp Liquid dispenser plastic bottle and receptacle with piercing units
US3709437A (en) 1968-09-23 1973-01-09 Hershel Earl Wright Method and device for producing foam
US3760986A (en) 1970-08-19 1973-09-25 Schuyler Dev Corp Dispensing bottles with pump means for simultaneous dispensing
US3786963A (en) 1971-11-04 1974-01-22 Mennen Co Apparatus for dispensing mixed components
US3813011A (en) 1971-05-11 1974-05-28 S Harrison Aerosol can for dispensing materials in fixed volumetric ratio
US3865134A (en) 1973-04-23 1975-02-11 Cornelius Co Sanitary valve
US4006841A (en) 1974-07-24 1977-02-08 Girair Hagop Alticosalian Perfume dispenser
US4011288A (en) 1975-03-14 1977-03-08 Baxter Travenol Laboratories, Inc. Disposable humidifier assembly
US4129231A (en) 1975-11-13 1978-12-12 Jeddeloh Bros. Sweed Mills, Inc. Portable, hand-held gun for dispensing multiple fluidic components to a mixer
US4285445A (en) 1979-05-01 1981-08-25 Iowa State University Research Foundation, Inc. Concentrate metering apparatus
US4372100A (en) 1979-11-01 1983-02-08 Baxter Travenol Laboratories, Inc. Process and apparatus for compounding hyperalimentation solutions
US4469250A (en) 1982-02-25 1984-09-04 Nick Sekich, Jr. Squeezable dispensing apparatus and method of operation
US4484597A (en) 1981-11-26 1984-11-27 Bravo S.P.A. Homogenizer device, in particular for the production of whipped cream
US4496081A (en) 1983-07-08 1985-01-29 Fomo Products, Inc. Dispensing apparatus
US4549674A (en) 1982-03-09 1985-10-29 Alticosalian Girair H Perfume dispenser
US4770323A (en) 1986-01-17 1988-09-13 Aerosol Inventions And Development S.A. A.I.D. S.A. Sterile packaging of liquid and semi-liquid fluids
US4881575A (en) 1988-09-12 1989-11-21 Smith Richard J Shower head dispensing fixture
US4993594A (en) 1989-09-27 1991-02-19 Piper Becker Multi-constituent mixing and metering dispenser
US5169029A (en) 1990-05-31 1992-12-08 Societe Francaise d'Aerosols et de Bauchage Mixing dispenser and method of using same
US5188455A (en) 1990-11-13 1993-02-23 The Pennsylvania Research Corporation Apparatus for remote mixing of fluids
US5332157A (en) * 1990-10-01 1994-07-26 Take 5 Hand operated fluid dispenser for multiple fluids and dispenser bottle
US5385270A (en) * 1993-06-29 1995-01-31 Cataneo; Ralph J. Selectable ratio dispensing apparatus
US5398846A (en) 1993-08-20 1995-03-21 S. C. Johnson & Son, Inc. Assembly for simultaneous dispensing of multiple fluids
US5402916A (en) 1993-06-22 1995-04-04 Nottingham Spirk Design Associates Dual chamber sprayer with metering assembly
EP0676339A2 (en) 1994-03-31 1995-10-11 MICYS COMPANY S.r.l. Dispenser for metering two liquid or paste products in the required proportions
US5562250A (en) 1995-02-13 1996-10-08 Contico International, Inc. Multiple component mixing trigger sprayer
DE29511932U1 (en) 1995-07-24 1996-11-21 Brugger Gerhard Dispenser for a medium composed of two components
US5634571A (en) 1995-06-07 1997-06-03 Innavision Services, Inc. Apparatus for dispensing two sprayable substances in a user selectable ratio
US5769275A (en) * 1996-07-08 1998-06-23 Vernay Laboratories, Inc. Dual dispensing valve assembly
US5813573A (en) * 1995-06-28 1998-09-29 Guala S.P.A. Dispenser for the simultaneous delivery of at least two paste-like products
US5848730A (en) 1996-01-31 1998-12-15 Kao Corporation Discharge bottle for jetting two agents simultaneously
US5865797A (en) 1997-01-21 1999-02-02 Zeeman; Mary L. Fluid deliver system
US5897539A (en) 1995-09-28 1999-04-27 Schering Aktiengesellschaft Hormone replacement therapy method and hormone dispenser
US5967373A (en) 1997-05-06 1999-10-19 The Plastek Group Product dispenser having separable refill cartridge and staging and locking structure
US6021961A (en) * 1998-03-06 2000-02-08 Flexible Products Company Crossover-resistant plural component mixing nozzle
US6082593A (en) 1997-02-27 2000-07-04 Jean Charles, Inc. Low maintenance cosmetic dispenser with a slideable nozzle hood
US6223788B1 (en) 1998-05-29 2001-05-01 Dresser Equipment Group, Inc. Fuel nozzle dispenser using ultrasonic metering
US20010013523A1 (en) * 2000-02-11 2001-08-16 Gross Richard A. Multiple dispensing valve closure with threaded attachment to a container and with a twist-open spout
US20010025859A1 (en) * 2000-02-17 2001-10-04 Charles Dumont Mixing and dispensing container having removably attachable supply vessels
US6328543B1 (en) 1998-11-30 2001-12-11 The Procter & Gamble Company Gear pump and replaceable reservoir for a fluid sprayer
US6543490B1 (en) 2000-11-22 2003-04-08 United States Can Company Aerosol colorant charging system and method
US20030075573A1 (en) 2001-10-22 2003-04-24 Trek Bicycle Corp. Dual bladder sports hydration system
US6557732B2 (en) 2000-07-19 2003-05-06 The Procter & Gamble Company Detergent pack
US6719729B2 (en) 2000-11-09 2004-04-13 Dentaco Dentalindustrie Und-Marketing Gmbh Prefilled telescoping multiple chamber ampoule device
US6736288B1 (en) 2000-10-26 2004-05-18 Ronald D. Green Multi-valve delivery system
US20040159677A1 (en) 2003-02-17 2004-08-19 F.S. Korea Industries, Inc. Cosmetic material vessel for automatically mixing and precisely dispensing the contents with a desired quantity
US6793098B2 (en) 2002-02-08 2004-09-21 Polyfoam Products, Inc. System and apparatus for foam dispensing with adjustable orifice flow regulating device and method of using same
US20050042122A1 (en) * 2002-02-13 2005-02-24 Laurent Arghyris Device for conditioning and distributing several fluids, comprising at least two pumps
US6877638B2 (en) 2001-07-11 2005-04-12 The Procter & Gamble Company Uniform dispensing, multi-chambered tube comprising a flow regulating element
US6971549B2 (en) 2003-04-18 2005-12-06 S.C. Johnson & Son, Inc. Bottle adapter for dispensing of cleanser from bottle used in an automated cleansing sprayer
US7044402B2 (en) 2003-10-27 2006-05-16 Finn Clifford J Multi-component fluid mix ratio check nozzle and kit
US7152758B2 (en) 2004-08-17 2006-12-26 Avago Technologies Wireless Ip (Singapore) Pte. Ltd. Scented material dispense system for a hand-held device
US20070012725A1 (en) 2005-07-18 2007-01-18 Jajeh John S Device and method for applying a fluid grooming product
US20070069046A1 (en) 2005-04-19 2007-03-29 Foamix Ltd. Apparatus and method for releasing a measure of content from a plurality of containers
US7222802B2 (en) 2003-05-23 2007-05-29 Meadwestvaco Corporation Dual sprayer with external mixing chamber
US7267248B2 (en) 2002-05-21 2007-09-11 Seaquist Perfect Dispensing Foreign Aerosol dispenser for mixing and dispensing multiple fluid products
WO2008053311A2 (en) 2006-10-30 2008-05-08 Ehsan Filsouf A spraying device with liquid adjustment mechanism
DE102006027778A1 (en) 2006-06-16 2008-05-08 Walter, Siegfried, Dipl.-Ing. Fluid substances i.e. scents, mixing device, has conveyer system for conveying fluid substances and applying mixture on skin, and adjusting device with valve by which inlet is changed in cross section in mixing area
US20080110930A1 (en) 2003-12-31 2008-05-15 Mixtek System, Llc Mixing Head for Multiple Components Systems and UsesThereof
US7377404B2 (en) 2004-12-22 2008-05-27 Cherfane Raymond C Modular mixing assembly and dispensing device
US20080203110A1 (en) * 2007-02-23 2008-08-28 Poly-D, Llc Dual chambered fluid dispenser with mixing chamber
US20090005903A1 (en) 2006-01-30 2009-01-01 Gs Industrial Design, Inc. Method Of Blending Fuels And Related System
US7481335B2 (en) 2005-04-25 2009-01-27 Owens James A Variably proportional mixing container
US7487889B2 (en) 2005-04-25 2009-02-10 Owens James A Variably proportional mixing device
US7487888B1 (en) 2005-07-15 2009-02-10 Pierre Jr Lloyd A Fluid dispensing apparatus
US7537139B2 (en) 2005-05-27 2009-05-26 Henkel Corporation Dual chamber piston pressure pack dispenser system
US20090152298A1 (en) 2003-06-30 2009-06-18 Steven Woolfson Personal water and additive apparatus
US7559440B2 (en) 2004-09-07 2009-07-14 Clayton Corporation Anti-crossover dispensing applicator
US20090194561A1 (en) 2005-11-29 2009-08-06 Rexam Petainer Lidkoping Ab System and Method for Distribution and Dispensing of Beverages
US20090216183A1 (en) 2008-02-25 2009-08-27 Americo Michael Minotti Multi medication nasal spray device and method
US7594594B2 (en) 2004-11-17 2009-09-29 International Flavors & Fragrances Inc. Multi-compartment storage and delivery containers and delivery system for microencapsulated fragrances
US7641075B2 (en) 2004-10-01 2010-01-05 Angiotech Pharmaceuticals (Us), Inc. Mixing and dispensing fluid components of a multicomponent composition
US20100065130A1 (en) 2008-09-12 2010-03-18 Swab John H Two component foam dispensing apparatus
US7717297B2 (en) 2004-06-25 2010-05-18 Bunn-O-Matic Corporation Component mixing method, apparatus and system
US20100133293A1 (en) 2007-07-25 2010-06-03 The Coca-Cola Company Dispensing Nozzle Assembly
US20100185322A1 (en) 2009-01-19 2010-07-22 Access Business Group International Llc Method and apparatus for dispensing fluid compositions
US7775401B2 (en) 2007-06-25 2010-08-17 S.C. Johnson & Son, Inc. Fluid delivery system for dispensing primary and secondary fluids
US7789273B2 (en) 2004-06-25 2010-09-07 Bunn-O-Matic Corporation Component mixing method, apparatus and system
US7789278B2 (en) 2007-04-12 2010-09-07 The Clorox Company Dual chamber aerosol container
US20100252574A1 (en) 2007-11-12 2010-10-07 Zhermack S.P.A. Dispenser device for bi-component substances
US20100264162A1 (en) 2007-10-26 2010-10-21 Amyris Biotechnologies, Inc. Fuel composition dispensing system
US7819342B2 (en) 2004-05-03 2010-10-26 Boehringer Ingelheim International Gmbh Atomizer for dispensing liquids for medical purposes
US7861893B2 (en) 2006-11-10 2011-01-04 Ethicon Endo-Surgery, Inc. Adhesive dispenser for surgery
US20110011888A2 (en) 2007-09-06 2011-01-20 Russell Beavis Product dispensing system
US20110121034A1 (en) 2009-11-23 2011-05-26 Basf Se Foam dispensing apparatus
US20110139180A1 (en) 2002-09-13 2011-06-16 Bissell Homecare, Inc. Manual spray cleaner and protectants
US7967220B2 (en) 2002-09-13 2011-06-28 Bissell Homecare, Inc. Manual sprayer with dual bag-on-valve assembly
US20110174837A1 (en) 2006-09-19 2011-07-21 Nelson Steven D Apparatus for reconstituting and applying liquids and method of using same
US20110204090A1 (en) 2010-02-24 2011-08-25 Colgate-Palmolive Company Dispenser cap with selectable reservoirs
US20110259912A1 (en) 2006-06-15 2011-10-27 Choiniere Stanley W Adhesive Dispenser System
US20110303694A1 (en) 2010-06-14 2011-12-15 Ivex Protective Packaging , Inc. Foam dispenser
US20120279990A1 (en) 2011-05-02 2012-11-08 Mouse Trap Design, Llc Mixing and dispensing device
US8523017B2 (en) 2011-09-22 2013-09-03 Veltek Associates, Inc. Mixing and dispensing apparatus
US8684233B2 (en) 2008-10-17 2014-04-01 Saraya Co., Ltd. Fluid container unit and method for injecting different kinds of fluids into fluid usage equipment
US20150231658A1 (en) * 2013-11-07 2015-08-20 Mouse Trap Design, Llc Mixing and dispensing device

Patent Citations (112)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US704105A (en) 1901-11-29 1902-07-08 Ellis D Read Bottle or flask.
US2118704A (en) 1936-09-14 1938-05-24 Raymond B Grontkowski Embalming machine and aspirator
US2400955A (en) 1943-08-14 1946-05-28 Samel Leo Beverage container and dispenser
US2608320A (en) 1947-03-31 1952-08-26 Jr Joseph R Harrison Pump type dispenser with cartridge having flexible and rigid portions
US3236418A (en) 1962-11-16 1966-02-22 Oreal Apparatus for producing constant proportion mixtures of two or more aerosols
US3208639A (en) 1964-05-06 1965-09-28 Finesse Products Inc Sealed fluid dispensing system for oxidizable fluids
FR1408299A (en) 1964-07-01 1965-08-13 Perfume sprayer-mixer or atomizer-mixer
US3384119A (en) 1966-03-16 1968-05-21 Masco Corp Mixing valve
US3392859A (en) 1966-04-22 1968-07-16 Albert M. Fischer Perforable self-sealing container closure
US3709437A (en) 1968-09-23 1973-01-09 Hershel Earl Wright Method and device for producing foam
US3685694A (en) 1969-12-18 1972-08-22 Yan Nell Corp Liquid dispenser plastic bottle and receptacle with piercing units
US3760986A (en) 1970-08-19 1973-09-25 Schuyler Dev Corp Dispensing bottles with pump means for simultaneous dispensing
US3813011A (en) 1971-05-11 1974-05-28 S Harrison Aerosol can for dispensing materials in fixed volumetric ratio
US3786963A (en) 1971-11-04 1974-01-22 Mennen Co Apparatus for dispensing mixed components
US3865134A (en) 1973-04-23 1975-02-11 Cornelius Co Sanitary valve
US4006841A (en) 1974-07-24 1977-02-08 Girair Hagop Alticosalian Perfume dispenser
US4011288A (en) 1975-03-14 1977-03-08 Baxter Travenol Laboratories, Inc. Disposable humidifier assembly
US4129231A (en) 1975-11-13 1978-12-12 Jeddeloh Bros. Sweed Mills, Inc. Portable, hand-held gun for dispensing multiple fluidic components to a mixer
US4285445A (en) 1979-05-01 1981-08-25 Iowa State University Research Foundation, Inc. Concentrate metering apparatus
US4372100A (en) 1979-11-01 1983-02-08 Baxter Travenol Laboratories, Inc. Process and apparatus for compounding hyperalimentation solutions
US4484597A (en) 1981-11-26 1984-11-27 Bravo S.P.A. Homogenizer device, in particular for the production of whipped cream
US4469250A (en) 1982-02-25 1984-09-04 Nick Sekich, Jr. Squeezable dispensing apparatus and method of operation
US4549674A (en) 1982-03-09 1985-10-29 Alticosalian Girair H Perfume dispenser
US4496081A (en) 1983-07-08 1985-01-29 Fomo Products, Inc. Dispensing apparatus
US4770323A (en) 1986-01-17 1988-09-13 Aerosol Inventions And Development S.A. A.I.D. S.A. Sterile packaging of liquid and semi-liquid fluids
US4881575A (en) 1988-09-12 1989-11-21 Smith Richard J Shower head dispensing fixture
US4993594A (en) 1989-09-27 1991-02-19 Piper Becker Multi-constituent mixing and metering dispenser
US5169029A (en) 1990-05-31 1992-12-08 Societe Francaise d'Aerosols et de Bauchage Mixing dispenser and method of using same
US5332157A (en) * 1990-10-01 1994-07-26 Take 5 Hand operated fluid dispenser for multiple fluids and dispenser bottle
US5188455A (en) 1990-11-13 1993-02-23 The Pennsylvania Research Corporation Apparatus for remote mixing of fluids
US5402916A (en) 1993-06-22 1995-04-04 Nottingham Spirk Design Associates Dual chamber sprayer with metering assembly
US5385270A (en) * 1993-06-29 1995-01-31 Cataneo; Ralph J. Selectable ratio dispensing apparatus
US5398846A (en) 1993-08-20 1995-03-21 S. C. Johnson & Son, Inc. Assembly for simultaneous dispensing of multiple fluids
EP0676339A2 (en) 1994-03-31 1995-10-11 MICYS COMPANY S.r.l. Dispenser for metering two liquid or paste products in the required proportions
US5562250A (en) 1995-02-13 1996-10-08 Contico International, Inc. Multiple component mixing trigger sprayer
US5634571A (en) 1995-06-07 1997-06-03 Innavision Services, Inc. Apparatus for dispensing two sprayable substances in a user selectable ratio
US5813573A (en) * 1995-06-28 1998-09-29 Guala S.P.A. Dispenser for the simultaneous delivery of at least two paste-like products
US5848732A (en) 1995-07-24 1998-12-15 Brugger; Gerhard Dispenser for a liquid medium consisting of two components
DE29511932U1 (en) 1995-07-24 1996-11-21 Brugger Gerhard Dispenser for a medium composed of two components
US5897539A (en) 1995-09-28 1999-04-27 Schering Aktiengesellschaft Hormone replacement therapy method and hormone dispenser
US5848730A (en) 1996-01-31 1998-12-15 Kao Corporation Discharge bottle for jetting two agents simultaneously
US5769275A (en) * 1996-07-08 1998-06-23 Vernay Laboratories, Inc. Dual dispensing valve assembly
US5865797A (en) 1997-01-21 1999-02-02 Zeeman; Mary L. Fluid deliver system
US6082593A (en) 1997-02-27 2000-07-04 Jean Charles, Inc. Low maintenance cosmetic dispenser with a slideable nozzle hood
US5967373A (en) 1997-05-06 1999-10-19 The Plastek Group Product dispenser having separable refill cartridge and staging and locking structure
US6021961A (en) * 1998-03-06 2000-02-08 Flexible Products Company Crossover-resistant plural component mixing nozzle
US6223788B1 (en) 1998-05-29 2001-05-01 Dresser Equipment Group, Inc. Fuel nozzle dispenser using ultrasonic metering
US6328543B1 (en) 1998-11-30 2001-12-11 The Procter & Gamble Company Gear pump and replaceable reservoir for a fluid sprayer
US20010013523A1 (en) * 2000-02-11 2001-08-16 Gross Richard A. Multiple dispensing valve closure with threaded attachment to a container and with a twist-open spout
US6398077B1 (en) * 2000-02-11 2002-06-04 Seaquist Closures Foreign, Inc. Package with multiple chambers and valves
US20010025859A1 (en) * 2000-02-17 2001-10-04 Charles Dumont Mixing and dispensing container having removably attachable supply vessels
US6557732B2 (en) 2000-07-19 2003-05-06 The Procter & Gamble Company Detergent pack
US6736288B1 (en) 2000-10-26 2004-05-18 Ronald D. Green Multi-valve delivery system
US6719729B2 (en) 2000-11-09 2004-04-13 Dentaco Dentalindustrie Und-Marketing Gmbh Prefilled telescoping multiple chamber ampoule device
US6543490B1 (en) 2000-11-22 2003-04-08 United States Can Company Aerosol colorant charging system and method
US6877638B2 (en) 2001-07-11 2005-04-12 The Procter & Gamble Company Uniform dispensing, multi-chambered tube comprising a flow regulating element
US20030075573A1 (en) 2001-10-22 2003-04-24 Trek Bicycle Corp. Dual bladder sports hydration system
US6793098B2 (en) 2002-02-08 2004-09-21 Polyfoam Products, Inc. System and apparatus for foam dispensing with adjustable orifice flow regulating device and method of using same
US20050042122A1 (en) * 2002-02-13 2005-02-24 Laurent Arghyris Device for conditioning and distributing several fluids, comprising at least two pumps
US7481334B2 (en) 2002-02-13 2009-01-27 Lablabo Device for conditioning and distributing several fluids, comprising at least two pumps
US7267248B2 (en) 2002-05-21 2007-09-11 Seaquist Perfect Dispensing Foreign Aerosol dispenser for mixing and dispensing multiple fluid products
US20110139180A1 (en) 2002-09-13 2011-06-16 Bissell Homecare, Inc. Manual spray cleaner and protectants
US7967220B2 (en) 2002-09-13 2011-06-28 Bissell Homecare, Inc. Manual sprayer with dual bag-on-valve assembly
US20110215113A1 (en) 2002-09-13 2011-09-08 Bissell Homecare, Inc. Manual sprayer with dual bag-on-valve assembly
US20040159677A1 (en) 2003-02-17 2004-08-19 F.S. Korea Industries, Inc. Cosmetic material vessel for automatically mixing and precisely dispensing the contents with a desired quantity
US6971549B2 (en) 2003-04-18 2005-12-06 S.C. Johnson & Son, Inc. Bottle adapter for dispensing of cleanser from bottle used in an automated cleansing sprayer
US7222802B2 (en) 2003-05-23 2007-05-29 Meadwestvaco Corporation Dual sprayer with external mixing chamber
US20090152298A1 (en) 2003-06-30 2009-06-18 Steven Woolfson Personal water and additive apparatus
US7044402B2 (en) 2003-10-27 2006-05-16 Finn Clifford J Multi-component fluid mix ratio check nozzle and kit
US20080110930A1 (en) 2003-12-31 2008-05-15 Mixtek System, Llc Mixing Head for Multiple Components Systems and UsesThereof
US7819342B2 (en) 2004-05-03 2010-10-26 Boehringer Ingelheim International Gmbh Atomizer for dispensing liquids for medical purposes
US7717297B2 (en) 2004-06-25 2010-05-18 Bunn-O-Matic Corporation Component mixing method, apparatus and system
US20110079610A1 (en) 2004-06-25 2011-04-07 Bunn-O-Matic Corporation Component mixing method, apparatus and system
US7789273B2 (en) 2004-06-25 2010-09-07 Bunn-O-Matic Corporation Component mixing method, apparatus and system
US7152758B2 (en) 2004-08-17 2006-12-26 Avago Technologies Wireless Ip (Singapore) Pte. Ltd. Scented material dispense system for a hand-held device
US7559440B2 (en) 2004-09-07 2009-07-14 Clayton Corporation Anti-crossover dispensing applicator
US7641075B2 (en) 2004-10-01 2010-01-05 Angiotech Pharmaceuticals (Us), Inc. Mixing and dispensing fluid components of a multicomponent composition
US7594594B2 (en) 2004-11-17 2009-09-29 International Flavors & Fragrances Inc. Multi-compartment storage and delivery containers and delivery system for microencapsulated fragrances
US7377404B2 (en) 2004-12-22 2008-05-27 Cherfane Raymond C Modular mixing assembly and dispensing device
US20070069046A1 (en) 2005-04-19 2007-03-29 Foamix Ltd. Apparatus and method for releasing a measure of content from a plurality of containers
US7487889B2 (en) 2005-04-25 2009-02-10 Owens James A Variably proportional mixing device
US7481335B2 (en) 2005-04-25 2009-01-27 Owens James A Variably proportional mixing container
US7537139B2 (en) 2005-05-27 2009-05-26 Henkel Corporation Dual chamber piston pressure pack dispenser system
US7487888B1 (en) 2005-07-15 2009-02-10 Pierre Jr Lloyd A Fluid dispensing apparatus
US20070012725A1 (en) 2005-07-18 2007-01-18 Jajeh John S Device and method for applying a fluid grooming product
US20090194561A1 (en) 2005-11-29 2009-08-06 Rexam Petainer Lidkoping Ab System and Method for Distribution and Dispensing of Beverages
US20090005903A1 (en) 2006-01-30 2009-01-01 Gs Industrial Design, Inc. Method Of Blending Fuels And Related System
US20110259912A1 (en) 2006-06-15 2011-10-27 Choiniere Stanley W Adhesive Dispenser System
DE102006027778A1 (en) 2006-06-16 2008-05-08 Walter, Siegfried, Dipl.-Ing. Fluid substances i.e. scents, mixing device, has conveyer system for conveying fluid substances and applying mixture on skin, and adjusting device with valve by which inlet is changed in cross section in mixing area
US20110174837A1 (en) 2006-09-19 2011-07-21 Nelson Steven D Apparatus for reconstituting and applying liquids and method of using same
US20100108779A1 (en) 2006-10-30 2010-05-06 Ehsan Filsouf Spraying Device With Liquid Adjustment Mechanism
WO2008053311A2 (en) 2006-10-30 2008-05-08 Ehsan Filsouf A spraying device with liquid adjustment mechanism
US7861893B2 (en) 2006-11-10 2011-01-04 Ethicon Endo-Surgery, Inc. Adhesive dispenser for surgery
US20080203110A1 (en) * 2007-02-23 2008-08-28 Poly-D, Llc Dual chambered fluid dispenser with mixing chamber
US7789278B2 (en) 2007-04-12 2010-09-07 The Clorox Company Dual chamber aerosol container
US7775401B2 (en) 2007-06-25 2010-08-17 S.C. Johnson & Son, Inc. Fluid delivery system for dispensing primary and secondary fluids
US20100133293A1 (en) 2007-07-25 2010-06-03 The Coca-Cola Company Dispensing Nozzle Assembly
US20110011888A2 (en) 2007-09-06 2011-01-20 Russell Beavis Product dispensing system
US20100264162A1 (en) 2007-10-26 2010-10-21 Amyris Biotechnologies, Inc. Fuel composition dispensing system
US20100252574A1 (en) 2007-11-12 2010-10-07 Zhermack S.P.A. Dispenser device for bi-component substances
US20090216183A1 (en) 2008-02-25 2009-08-27 Americo Michael Minotti Multi medication nasal spray device and method
US7875001B2 (en) 2008-02-25 2011-01-25 Americo Michael Minotti Multi medication nasal spray device and method
US20100065130A1 (en) 2008-09-12 2010-03-18 Swab John H Two component foam dispensing apparatus
US8684233B2 (en) 2008-10-17 2014-04-01 Saraya Co., Ltd. Fluid container unit and method for injecting different kinds of fluids into fluid usage equipment
US20100185322A1 (en) 2009-01-19 2010-07-22 Access Business Group International Llc Method and apparatus for dispensing fluid compositions
US20110121034A1 (en) 2009-11-23 2011-05-26 Basf Se Foam dispensing apparatus
US20110204090A1 (en) 2010-02-24 2011-08-25 Colgate-Palmolive Company Dispenser cap with selectable reservoirs
US20110303694A1 (en) 2010-06-14 2011-12-15 Ivex Protective Packaging , Inc. Foam dispenser
US20120279990A1 (en) 2011-05-02 2012-11-08 Mouse Trap Design, Llc Mixing and dispensing device
US9180476B2 (en) 2011-05-02 2015-11-10 Mouse Trap Design, Llc Mixing and dispensing device
US8523017B2 (en) 2011-09-22 2013-09-03 Veltek Associates, Inc. Mixing and dispensing apparatus
US20150231658A1 (en) * 2013-11-07 2015-08-20 Mouse Trap Design, Llc Mixing and dispensing device

Non-Patent Citations (5)

* Cited by examiner, † Cited by third party
Title
Tile: Variblend, URL: http://www.variblend.com, Accessed: Dec. 19, 2012.
Title: Dual-chamber Yonwoo dispenser for Biotherm Age Fitness Elastic, URL: http://www.quadpack.net/uk/our-products/latest-launchesidual-chamber-yonwoo-dispenser-for-biotherm-ageitness-elastic/, Accessed: Jun. 28, 2012.
Title: Dual-chambered dispenser, URL: http://www.packworld.com/applications/personal-care/dual-chambered-dispenser, Accessed: Jun. 28, 2012.
Title: Miks Trail Dispenser, URL: http://www.interzinc.com/zincchallenge/results.html, Accessed: Dec. 19, 2012.
Title: Two-in-One bottle for olive oil and vinegar, URL: http://bestinpackaging.com/2011/05105/dual-chamber-bottles/, Accessed: Dec. 19, 2012.

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10974265B1 (en) * 2018-07-22 2021-04-13 Paul Sung Ventresca LLC Spray device with interchangeable cartridges and methods of use
US11464889B2 (en) 2018-11-29 2022-10-11 Ethicon, Inc. Antimicrobial-containing silicone lubricious coatings
US11559610B2 (en) 2018-11-29 2023-01-24 Ethicon, Inc. Low temperature cured silicone lubricious coatings
CN110124919A (en) * 2019-05-22 2019-08-16 成都工业职业技术学院 A kind of multicomponent paint spray device
CN110124919B (en) * 2019-05-22 2020-03-31 成都工业职业技术学院 Multi-component automobile paint spraying device
US11479669B2 (en) 2020-05-28 2022-10-25 Ethicon, Inc. Topical skin closure compositions and systems
US11518604B2 (en) * 2020-05-28 2022-12-06 Ethicon, Inc. Systems, methods and devices for aerosol spraying of silicone based topical skin adhesives for sealing wounds
US11589867B2 (en) 2020-05-28 2023-02-28 Ethicon, Inc. Anisotropic wound closure systems
US11712229B2 (en) 2020-05-28 2023-08-01 Ethicon, Inc. Systems, devices and methods for dispensing and curing silicone based topical skin adhesives
US11718753B2 (en) 2020-05-28 2023-08-08 Ethicon, Inc. Topical skin closure compositions and systems

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US20150231658A1 (en) 2015-08-20
WO2016073034A1 (en) 2016-05-12
WO2015070097A1 (en) 2015-05-14
US20150122837A1 (en) 2015-05-07

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